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wastewater treatment

  • Chemically Activated Corn Biochar Achieves High Dyes Removal Capacities

    Chemically Activated Corn Biochar Achieves High Dyes Removal Capacities

  • Engineered Biochar Achieves Ninety-Nine Percent Lead and Eighty-Eight Percent Chromium Removal in Wastewater

    Engineered Biochar Achieves Ninety-Nine Percent Lead and Eighty-Eight Percent Chromium Removal in Wastewater

  • Bamboo Carbon Reaches 903.7 Square Meters Per Gram Surface Area and Captures 80.68 Percent of Aquatic Contaminants

    Bamboo Carbon Reaches 903.7 Square Meters Per Gram Surface Area and Captures 80.68 Percent of Aquatic Contaminants

  • Amine-Functionalized Biochar Achieves Record 589 Milligrams Per Gram Microplastic Adsorption Capacity in Aquatic Remediation

    Amine-Functionalized Biochar Achieves Record 589 Milligrams Per Gram Microplastic Adsorption Capacity in Aquatic Remediation

  • Modified Biochar Achieves 161.91 mg/g Capacity for Water Antibiotic Removal

    Modified Biochar Achieves 161.91 mg/g Capacity for Water Antibiotic Removal

  • Magnesium Oxide Impregnated Combined Biochar Enhances Simultaneous Removal of Lead and Chromium from Wastewater

    Magnesium Oxide Impregnated Combined Biochar Enhances Simultaneous Removal of Lead and Chromium from Wastewater

  • Modified Periwinkle Shell Biochar Removes up to Ninety-Six Percent of Toxic Heavy Metals and Thirty-Three Percent of Organic Pollutants from Paint Industrial Wastewater

    Modified Periwinkle Shell Biochar Removes up to Ninety-Six Percent of Toxic Heavy Metals and Thirty-Three Percent of Organic Pollutants from Paint Industrial Wastewater

  • Synthesized Azolla and Biochar Material Yields a 96.21 Percent Methylene Blue Adsorption Efficiency and Transitions into an Effective Electrocatalyst

    Synthesized Azolla and Biochar Material Yields a 96.21 Percent Methylene Blue Adsorption Efficiency and Transitions into an Effective Electrocatalyst

  • Modified Biochar Composites Can Remove Up to Ninety-Nine Percent of Aquatic Microplastics and Eighty-Eight Percent of Arsenic from Wastewater

    Modified Biochar Composites Can Remove Up to Ninety-Nine Percent of Aquatic Microplastics and Eighty-Eight Percent of Arsenic from Wastewater

  • Animal Manure-Derived Biochar Proves Effective for Waste Valorization and Multi-Sector Environmental Remediation

    Animal Manure-Derived Biochar Proves Effective for Waste Valorization and Multi-Sector Environmental Remediation

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John Webster – Operations
Timothy Harfield – Founding Editor


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